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Performance of a Distributed Simultaneous Strain and Temperature Sensor Based on a Fabry-Perot Laser Diode and a Dual-Stage FBG Optical Demultiplexer

机译:基于法布里-珀罗激光二极管和双阶段FBG光学多路分解器的分布式同时应变和温度传感器的性能

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摘要

A simultaneous strain and temperature measurement method using a Fabry-Perot laser diode (FP-LD) and a dual-stage fiber Bragg grating (FBG) optical demultiplexer was applied to a distributed sensor system based on Brillouin optical time domain reflectometry (BOTDR). By using a Kalman filter, we improved the performance of the FP-LD based OTDR, and decreased the noise using the dual-stage FBG optical demultiplexer. Applying the two developed components to the BOTDR system and using a temperature compensating algorithm, we successfully demonstrated the simultaneous measurement of strain and temperature distributions under various experimental conditions. The observed errors in the temperature and strain measured using the developed sensing system were 0.6 °C and 50 με, and the spatial resolution was 1 m, respectively.
机译:利用布里渊光时域反射仪(BOTDR)将使用Fabry-Perot激光二极管(FP-LD)和双级光纤布拉格光栅(FBG)光解复用器的同时应变和温度测量方法应用于分布式传感器系统。通过使用卡尔曼滤波器,我们提高了基于FP-LD的OTDR的性能,并使用了两级FBG光学多路分解器降低了噪声。将这两个开发的组件应用于BOTDR系统并使用温度补偿算法,我们成功地演示了在各种实验条件下同时测量应变和温度分布的方法。使用开发的传感系统测得的温度和应变的观测误差分别为0.6°C和50με,空间分辨率分别为1 m。

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